The animated pattern math (background sweep, moving 24px bar, frame- counter block) was copy-pasted across all five clear-based backends (dx9/dx10/dx11/dx12/gl). The backends MUST render an identical image -- the capture test decodes the same frame-counter block from each -- so a drift between copies would be a silent test hazard. Factor it into one frame_pattern() helper (plus kBarWidth) in render_backend.hpp; each backend now consumes the computed bg/bar_x/code values with its own API's clear/fill. mock_game_test still decodes every backend correctly.
126 lines
3.9 KiB
C++
126 lines
3.9 KiB
C++
// DX10 backend for the mock game. DX10 has no rect-clear (ClearView), so it composes the
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// animated pattern (background + moving bar + top-left frame-counter block) into a CPU buffer
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// each frame, uploads it into a scratch texture, and CopyResource's that into the swap-chain
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// back buffer -- no shaders. It presents through a real D3D10 DXGI swap chain, so the capture
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// hook sees a genuine D3D10 present.
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#include "render_backend.hpp"
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#include <vector>
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#include <d3d10.h>
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#include <dxgi.h>
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#include <wrl/client.h>
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using Microsoft::WRL::ComPtr;
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namespace coop::mock
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{
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namespace
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{
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std::uint32_t pack(std::uint8_t r, std::uint8_t g, std::uint8_t b, std::uint8_t a = 255)
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{
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// R8G8B8A8_UNORM byte order: R in the low byte.
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return static_cast<std::uint32_t>(r) | (static_cast<std::uint32_t>(g) << 8) |
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(static_cast<std::uint32_t>(b) << 16) | (static_cast<std::uint32_t>(a) << 24);
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}
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class Dx10Backend : public RenderBackend
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{
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public:
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bool init(HWND hwnd, std::uint32_t width, std::uint32_t height) override
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{
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width_ = width;
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height_ = height;
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px_.resize(static_cast<std::size_t>(width) * height);
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DXGI_SWAP_CHAIN_DESC desc = {};
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desc.BufferDesc.Width = width;
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desc.BufferDesc.Height = height;
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desc.BufferDesc.Format = DXGI_FORMAT_R8G8B8A8_UNORM; // UNORM (not sRGB) so the frame code is exact
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desc.BufferDesc.RefreshRate.Numerator = 60;
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desc.BufferDesc.RefreshRate.Denominator = 1;
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desc.SampleDesc.Count = 1;
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desc.BufferUsage = DXGI_USAGE_RENDER_TARGET_OUTPUT;
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desc.BufferCount = 2;
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desc.OutputWindow = hwnd;
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desc.Windowed = TRUE;
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desc.SwapEffect = DXGI_SWAP_EFFECT_DISCARD; // blt model: GetBuffer(0) is the back buffer
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if (FAILED(D3D10CreateDeviceAndSwapChain(nullptr, D3D10_DRIVER_TYPE_HARDWARE, nullptr, 0,
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D3D10_SDK_VERSION, &desc, swap_.GetAddressOf(),
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device_.GetAddressOf())))
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{
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return false;
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}
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// Scratch texture matching the back buffer; we upload the CPU frame into it then
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// CopyResource it into the back buffer (DX10 can't fill a sub-rect of an RTV directly).
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D3D10_TEXTURE2D_DESC td = {};
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td.Width = width;
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td.Height = height;
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td.MipLevels = 1;
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td.ArraySize = 1;
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td.Format = DXGI_FORMAT_R8G8B8A8_UNORM;
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td.SampleDesc.Count = 1;
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td.Usage = D3D10_USAGE_DEFAULT;
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td.BindFlags = D3D10_BIND_SHADER_RESOURCE;
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return SUCCEEDED(device_->CreateTexture2D(&td, nullptr, scratch_.GetAddressOf()));
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}
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void render_and_present(std::uint32_t frame) override
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{
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const FramePattern p = frame_pattern(frame, width_);
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const std::uint32_t bg = pack(p.bg_r, p.bg_g, p.bg_b);
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const std::uint32_t whitepx = pack(255, 255, 255);
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const std::uint32_t code = pack(p.code_r, p.code_g, p.code_b);
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const std::uint32_t bx = p.bar_x; // moving vertical bar
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for (std::uint32_t y = 0; y < height_; ++y)
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{
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std::uint32_t* row = px_.data() + static_cast<std::size_t>(y) * width_;
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for (std::uint32_t x = 0; x < width_; ++x)
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{
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std::uint32_t c = bg;
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if (x >= bx && x < bx + kBarWidth)
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{
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c = whitepx;
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}
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if (x < kFrameBlock && y < kFrameBlock)
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{
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c = code; // top-left frame-counter block
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}
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row[x] = c;
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}
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}
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device_->UpdateSubresource(scratch_.Get(), 0, nullptr, px_.data(), static_cast<UINT>(width_ * 4), 0);
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ComPtr<ID3D10Texture2D> back;
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if (SUCCEEDED(swap_->GetBuffer(0, IID_PPV_ARGS(back.GetAddressOf()))))
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{
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device_->CopyResource(back.Get(), scratch_.Get());
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}
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swap_->Present(0, 0); // uncapped (BLT model): the mock does nothing -> it must be fast
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}
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[[nodiscard]] const char* name() const override
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{
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return "dx10";
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}
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private:
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std::uint32_t width_ = 0;
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std::uint32_t height_ = 0;
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std::vector<std::uint32_t> px_;
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ComPtr<ID3D10Device> device_;
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ComPtr<IDXGISwapChain> swap_;
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ComPtr<ID3D10Texture2D> scratch_;
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};
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} // namespace
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std::unique_ptr<RenderBackend> create_dx10_backend()
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{
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return std::make_unique<Dx10Backend>();
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}
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} // namespace coop::mock
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